Phosphorylation at distinct subcellular locations underlies specificity in mTORC2-mediated activation of SGK1 and Akt

Catherine E Gleason1, Juan A Oses-Prieto2, Kathy H Li2

  • 1Department of Medicine, Division of Nephrology, UCSF, San Francisco, CA 94143, USA catie@circlepharma.com.

Insights

Angiotensin II selectively activates SGK1, not Akt, via mTORC2 signaling. This selectivity is achieved by regulating protein location, suggesting compartmentalized mTORC2 activity controls distinct cellular functions.

Area of Science:

  • Cellular signaling and molecular biology
  • Physiology and endocrinology

Background:

  • The mTORC2 complex integrates signaling pathways crucial for metabolism and ion transport.
  • Understanding how mTORC2 selectively phosphorylates distinct downstream targets like Akt and SGK1 is essential.

Purpose of the Study:

  • To investigate the mechanism behind selective mTORC2-mediated phosphorylation of SGK1 versus Akt.
  • To elucidate the role of conventional PKC (cPKC) in regulating mTORC2 target localization and activation.

Main Methods:

  • Utilized angiotensin II (AngII) stimulation in cellular models.
  • Investigated the subcellular localization of SIN1 and SGK1 using cPKC inhibition.
  • Analyzed phosphorylation sites on SIN1 and its downstream targets.

Main Results:

  • AngII selectively stimulates SGK1 phosphorylation (S422) but not Akt (S473) in an mTORC2-dependent manner.
  • cPKC activity regulates the nuclear and perinuclear localization of SIN1 and SGK1.
  • Pre-targeting SIN1 and SGK1 to the plasma membrane inhibits SGK1 S422 phosphorylation, while Akt S473 phosphorylation remains unaffected.
  • Identified three novel cPKC phosphorylation sites on SIN1 (S128, S315, S356).

Conclusions:

  • SGK1 activation by mTORC2 occurs in a distinct subcellular compartment compared to Akt.
  • Subcellular compartmentalization of mTORC2 activity provides a mechanism for selective activation of its distinct targets.

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